Patent classifications
B26D5/30
Method of operating a flat-bed die cutter
In a method of operating a flat-bed die-cutter a printing substrate in the form of a web is fed to a die-cutting module of the flat-bed die-cutter, a web section is severed from the web and removed as waste. The web is guided through the die-cutting module and the web section is severed from the web in or downstream of the die-cutting module and removed as waste. Products are thus formed by die-cutting a web while reducing waste and periods of standstill.
SLICING MACHINE AND METHOD FOR SLICING ELASTIC STRANDS IN PARTICULAR MEAT STRANDS
A slicing machine for slicing meat strands that have a cross section that varies over a longitudinal extension in large numbers and as quickly as possible into weight precise slices. In one embodiment, two meat strands are received adjacent to each other in a respective form tube and pushed against a respective separately adjustable stop plate independently from each other by a controlled longitudinal press plunger and compressed in the longitudinal direction. In addition, a cross section of the form tubes may be reduced in a first transversal direction jointly and in a second transversal direction independently from each other and thus the respective meat strand is transversally compressed to a constant cross section prior to slicing.
SLICING MACHINE AND METHOD FOR SLICING ELASTIC STRANDS IN PARTICULAR MEAT STRANDS
A slicing machine for slicing meat strands that have a cross section that varies over a longitudinal extension in large numbers and as quickly as possible into weight precise slices. In one embodiment, two meat strands are received adjacent to each other in a respective form tube and pushed against a respective separately adjustable stop plate independently from each other by a controlled longitudinal press plunger and compressed in the longitudinal direction. In addition, a cross section of the form tubes may be reduced in a first transversal direction jointly and in a second transversal direction independently from each other and thus the respective meat strand is transversally compressed to a constant cross section prior to slicing.
Tape detection mechanism and tape printing apparatus
A tape detection mechanism including a first pivoting member provided to pivot about a detection pivoting shaft, a second pivoting member linked, to be configured to pivot, to a pivot linking portion provided on the first pivoting member, a pivoting contact section with which the second pivoting member comes into contact when the first pivoting member and the second pivoting member pivot in a first pivoting direction about the detection pivoting shaft as the tape, which is fed thereto, comes into contact with the first pivoting member, and a sensor which detects the second pivoting member which comes into contact with the pivoting contact section.
Tape detection mechanism and tape printing apparatus
A tape detection mechanism including a first pivoting member provided to pivot about a detection pivoting shaft, a second pivoting member linked, to be configured to pivot, to a pivot linking portion provided on the first pivoting member, a pivoting contact section with which the second pivoting member comes into contact when the first pivoting member and the second pivoting member pivot in a first pivoting direction about the detection pivoting shaft as the tape, which is fed thereto, comes into contact with the first pivoting member, and a sensor which detects the second pivoting member which comes into contact with the pivoting contact section.
CUTTER AND METHOD OF SEPARATION FOR SHEETS PRINTED FROM A CONTINUOUS WEB SUSCEPTIBLE OF LONGITUDINAL DIVISIONS AND RELATIVE WEB
Separator cutter for printed sheets from a continuous paper web provides multiple longitudinal divisions of different working sections with a series of single or adjacent sheets. The sheets have respective print areas with texts and/or images, while the cutter includes margining knives and longitudinal dividing knives and an electronic control unit. The cutter operates with webs wherein, at the beginning of each working section, a printed image mark (Print mark) is placed at a distance of the print area and automatically sets margins and division cuts based on a corresponding working section. The cutter includes servo mechanisms for displacement of the margining and longitudinal dividing knives and a sensor for the Print mark. In response to a new working section, the servo mechanisms is activated by positioning the knives in transverse positions based on data from the new working section and referencing the transverse position of the Print mark.
Smart cutter for high speed produce processing
A produce cutting apparatus is utilized, among other things, for making single cuts in an elongated produce product to trim ends, segment the product into variable length segments, make fixed length segments, and cutting out undesirable portions of the produce product. Using a combination of a feed belt, sensor, radial cutter apparatus and programmable controller, the apparatus precisely locates each cut. The cutting blade makes a single cut with each rotation of the radial cutter apparatus. The apparatus may further have a piece removal system and a product holding system.
Smart cutter for high speed produce processing
A produce cutting apparatus is utilized, among other things, for making single cuts in an elongated produce product to trim ends, segment the product into variable length segments, make fixed length segments, and cutting out undesirable portions of the produce product. Using a combination of a feed belt, sensor, radial cutter apparatus and programmable controller, the apparatus precisely locates each cut. The cutting blade makes a single cut with each rotation of the radial cutter apparatus. The apparatus may further have a piece removal system and a product holding system.
Smart Cutter for High Speed Produce Processing
A produce cutting apparatus is utilized, among other things, for making single cuts in an elongated produce product to trim ends, segment the product into variable length segments, make fixed length segments, and cutting out undesirable portions of the produce product. Using a combination of a feed belt, sensor, radial cutter apparatus and programmable controller, the apparatus precisely locates each cut. The cutting blade makes a single cut with each rotation of the radial cutter apparatus. The apparatus may further have a piece removal system and a product holding system.
Smart Cutter for High Speed Produce Processing
A produce cutting apparatus is utilized, among other things, for making single cuts in an elongated produce product to trim ends, segment the product into variable length segments, make fixed length segments, and cutting out undesirable portions of the produce product. Using a combination of a feed belt, sensor, radial cutter apparatus and programmable controller, the apparatus precisely locates each cut. The cutting blade makes a single cut with each rotation of the radial cutter apparatus. The apparatus may further have a piece removal system and a product holding system.